| Novel and unexpected bacterial diversity in an arsenic-rich ecosystem revealed by culture-dependent approaches. Delavat F., Lett M.C., Lievremont D.
Biol. Direct 7:28-28(2012) · UniProtKB (2) |
| Amylases without known homologues discovered in an acid mine drainage: significance and impact. Delavat F., Phalip V., Forster A., Plewniak F., Lett M.C., Lievremont D.
Sci Rep 2:354-354(2012) · UniProtKB (2) |
| Unified nomenclature for genes involved in prokaryotic aerobic arsenite oxidation. Lett M.C., Muller D., Lievremont D., Silver S., Santini J.
J. Bacteriol. 194:207-208(2012) · UniProtKB (4) |
| A tale of two oxidation states: bacterial colonization of arsenic-rich environments. Muller D., Medigue C., Koechler S., Barbe V., Barakat M., Talla E., Bonnefoy V., Krin E., Arsene-Ploetze F., Carapito C. et al.
PLoS Genet. 3:518-530(2007) · UniProtKB (3,274) |
| Identification of genes and proteins involved in the pleiotropic response to arsenic stress in Caenibacter arsenoxydans, a metalloresistant beta-proteobacterium with an unsequenced genome. Carapito C., Muller D., Turlin E., Koechler S., Danchin A., Van Dorsselaer A., Leize-Wagner E., Bertin P.N., Lett M.C.
Biochimie 88:595-606(2006) · UniProtKB (25) |
| Arsenite oxidase aox genes from a metal-resistant beta-Proteobacterium. Muller D., Lievremont D., Simeonova D.D., Hubert J.C., Lett M.C.
J. Bacteriol. 185:135-141(2003) · UniProtKB (4) |
| Extracellular transport of VirG protein in Shigella. Suzuki T., Lett M.-C., Sasakawa C.
J. Biol. Chem. 270:30874-30880(1995) · UniProtKB (1) |
| virG, a plasmid-coded virulence gene of Shigella flexneri: identification of the virG protein and determination of the complete coding sequence. Lett M.-C., Sasakawa C., Okada N., Sakai T., Makino S., Yamada M., Komatsu K., Yoshikawa M.
J. Bacteriol. 171:353-359(1989) · UniProtKB (1) |